agenthub/tests/sse.test.ts
chahinebrini 6fa94116a4 fix(hub): offene Asks sichtbar machen + Erinnerungsflut stoppen (TSK-0406)
Am 09.08. stellte sich heraus, dass fuenf Asks auf pending standen, zwei
seit einer Woche. Vier Agenten waren blockiert — darunter einer, der einen
fertigen Windows-Build fuer einen externen Tester nicht ausliefern durfte.
Der Architekt hat die ganze Zeit das Board gepollt und nichts davon gesehen.
Aufgefallen ist es nur, weil ein Agent den Stau selbst benannt hat.

TEIL 1 — SICHTBARKEIT (Umsetzung: codex)
Asks sind ein eigener, BLOCKIERENDER Kanal, den keine der Oberflaechen
erwaehnte, die ein Architekt regelmaessig ansieht:
- core/status.ts nennt jetzt Anzahl, IDs und Alter des aeltesten Asks.
  Das Alter ist der eigentliche Alarm: "einer offen" ist normal,
  "seit sechs Tagen offen" ist ein Notfall.
- /health liefert pendingAsks + oldestAskAgeSec — der billigste Statuscheck
  des Architekten; was dort nicht steht, existiert fuer ihn nicht.
- Der Watchdog kannte Asks gar nicht. Er meldete brav "silent for 16m",
  also das Symptom, waehrend die Ursache unsichtbar blieb. Jetzt alarmiert
  er bei ueberfaelligen Asks mit steigender Dringlichkeit, und die
  irrefuehrende "silent"-Meldung wird bei einem offenen Ask ersetzt durch
  "wartet seit Xh auf ASK-NNNN — bitte antworten, nicht neu starten".
  Genau diese Verwechslung fuehrte dazu, dass wartende Agenten fuer tot
  gehalten und ihre Sessions neu gestartet wurden.
- watch --await-ask weckt den Architekten bei neuen Asks (mit --new-only).
- Das Board zeigt offene Asks mit Alter und wartendem Agenten.

TEIL 2 — DIE FLUT (Umsetzung: claude)
Der Watchdog erinnerte einen nicht beanspruchten Task unbegrenzt im
Basisintervall weiter — auch an Agenten, von denen er WUSSTE, dass sie
nicht im work-Loop sind. Ergebnis: ueber 1500 ungelesene Nachrichten fuer
einen einzigen Agenten, dessen Loop daran nicht mehr anlief. Ein Alarm,
der den Empfaenger handlungsunfaehig macht, ist schlimmer als kein Alarm.
- Ist der Assignee nachweislich aus dem Loop ausgestiegen (nicht: nie
  gesehen), wird KEINE Erinnerung mehr in sein Postfach geschrieben.
  Eine Nachricht ist ein dauerhaftes Artefakt; in ein Postfach zu
  schreiben, das niemand liest, baut nur den Rueckstau auf, der spaeter
  seinen eigenen Loop blockiert. Stattdessen genau EIN Hinweis an den
  Architekten — ein Session-Neustart ist eine menschliche Entscheidung.
- Das ephemere SSE-Reemit bleibt in beiden Zweigen: es kostet nichts und
  erreicht womoeglich einen Agenten, der gerade neu verbindet.
- Fuer erreichbare Agenten waechst der Abstand exponentiell (Basis x 2^n,
  gedeckelt bei 8x) statt konstant zu bleiben.
- Der Zaehler wird zurueckgesetzt, sobald der Task beansprucht wird, damit
  ein spaeteres Reopen nicht in einem halb stummgeschalteten Zustand
  startet.

Der bestehende Test "does not spam" pruefte, dass nach erneutem Ablauf der
BASIS-Schwelle eine zweite Erinnerung kommt — also genau das Verhalten,
das die Flut erzeugt hat. Er ist auf den Backoff angepasst; seine Absicht
(Anti-Spam) gilt jetzt ueber die Lebensdauer eines Tasks statt nur ueber
ein Cooldown-Fenster.

316 Tests gruen, tsc --noEmit sauber.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-09 12:29:09 +02:00

830 lines
32 KiB
TypeScript

/**
* Tests for the SSE realtime channel (TSK-0006 part 1).
*
* Three concerns:
* 1. Unit: parseSSEBuffer + formatEvent (pure functions, no I/O).
* 2. Integration: eventBus emits on REST mutations (via app.inject).
* 3. E2E: a real server delivers a task/created event over the SSE stream.
*/
import { describe, it, expect, beforeEach, afterEach } from 'vitest';
import { mkdtempSync, rmSync, readFileSync, writeFileSync } from 'fs';
import { tmpdir } from 'os';
import { join } from 'path';
import { buildApp } from '../src/server/index.js';
import { startServer } from '../src/server/index.js';
import { eventBus } from '../src/server/events.js';
import type { AgentHubEvent } from '../src/server/events.js';
import { parseSSEBuffer, formatEvent, watchEvents } from '../src/cli/commands/watch.js';
import { init } from '../src/cli/commands/init.js';
import { getFsWatchErrors, resetFsWatchErrors, startEntityWatcher } from '../src/server/fsWatch.js';
import { createTask, claimTask, listTasks } from '../src/core/services/taskService.js';
import { listHubEventsAfter } from '../src/server/eventLog.js';
// ─── 1. Unit: SSE buffer parser ──────────────────────────────────────────────
describe('parseSSEBuffer', () => {
it('parses a single complete event', () => {
const buf = 'data: {"type":"task","action":"created","id":"TSK-0001"}\n\n';
const { events, remaining } = parseSSEBuffer(buf);
expect(events).toHaveLength(1);
expect(events[0].type).toBe('task');
expect(events[0].action).toBe('created');
expect(events[0].id).toBe('TSK-0001');
expect(remaining).toBe('');
});
it('parses multiple complete events in one buffer', () => {
const buf =
'data: {"type":"task","action":"created","id":"TSK-0001"}\n\n' +
'data: {"type":"memory","action":"created","id":"MEM-001"}\n\n';
const { events, remaining } = parseSSEBuffer(buf);
expect(events).toHaveLength(2);
expect(events[0].type).toBe('task');
expect(events[1].type).toBe('memory');
expect(remaining).toBe('');
});
it('ignores SSE keepalive comment blocks', () => {
const buf =
':\n\n' +
'data: {"type":"handoff","action":"created","id":"HOF-0001"}\n\n';
const { events } = parseSSEBuffer(buf);
expect(events).toHaveLength(1);
expect(events[0].id).toBe('HOF-0001');
});
it('keeps an incomplete tail in `remaining`', () => {
const buf =
'data: {"type":"task","action":"created","id":"TSK-0001"}\n\n' +
'data: {"type":"deci'; // truncated chunk
const { events, remaining } = parseSSEBuffer(buf);
expect(events).toHaveLength(1);
expect(remaining).toBe('data: {"type":"deci');
});
it('returns empty events and the full buffer when there is no complete event', () => {
const buf = 'data: {"type":"task"'; // no \n\n yet
const { events, remaining } = parseSSEBuffer(buf);
expect(events).toHaveLength(0);
expect(remaining).toBe('data: {"type":"task"');
});
it('silently skips malformed JSON without throwing', () => {
const buf = 'data: NOT_JSON\n\n';
const { events } = parseSSEBuffer(buf);
expect(events).toHaveLength(0);
});
it('attaches the SSE id field as event.seq', () => {
const buf = 'id: 42\ndata: {"type":"task","action":"created","id":"TSK-0042"}\n\n';
const { events } = parseSSEBuffer(buf);
expect(events).toHaveLength(1);
expect(events[0]).toMatchObject({ id: 'TSK-0042', seq: 42 });
});
it('ignores named task-log events in the generic change parser', () => {
const buf = 'event: task-log\ndata: {"taskId":"TSK-0001","text":"progress"}\n\n';
const { events } = parseSSEBuffer(buf);
expect(events).toHaveLength(0);
});
});
// ─── 2. Unit: formatEvent ────────────────────────────────────────────────────
describe('formatEvent (AgentHub-branded)', () => {
it('every line starts with the AgentHub: prefix', () => {
const ev: AgentHubEvent = { type: 'decision', action: 'created', id: 'DEC-0001' };
expect(formatEvent(ev).startsWith('AgentHub: ')).toBe(true);
});
it('formats a created task as "Task received <id> <title> [status]"', () => {
const ev: AgentHubEvent = { type: 'task', action: 'created', id: 'TSK-0019', title: 'Magic-App Audit', status: 'open' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Task received\s+TSK-0019\s+Magic-App Audit\s+\[open\]$/);
});
it('formats a created task with no title as "Task received <id> [status]"', () => {
const ev: AgentHubEvent = { type: 'task', action: 'created', id: 'TSK-0001', status: 'open' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Task received\s+TSK-0001\s+\[open\]$/);
});
it('formats a completed task as "Task done <id> by <agent>"', () => {
const ev: AgentHubEvent = {
type: 'task',
action: 'updated',
id: 'TSK-0003',
title: 'Implement auth',
status: 'done',
role: 'implementer',
assignedTo: 'windows-claude',
};
expect(formatEvent(ev)).toMatch(/^AgentHub: Task done\s+TSK-0003\s+by windows-claude$/);
});
it('formats a claimed task as "Task claimed <id> by <agent>"', () => {
const ev: AgentHubEvent = { type: 'task', action: 'updated', id: 'TSK-0014', status: 'in_progress', assignedTo: 'codex' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Task claimed\s+TSK-0014\s+by codex$/);
});
it('formats a handoff as "Handoff <id> → <role>"', () => {
const ev: AgentHubEvent = { type: 'handoff', action: 'created', id: 'HOF-0012', title: 'For codex', role: 'implementer' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Handoff\s+HOF-0012\s+.*→ implementer$/);
});
it('formats a decision with no detail as just the prefix + id', () => {
const ev: AgentHubEvent = { type: 'decision', action: 'created', id: 'DEC-0001' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Decision\s+DEC-0001$/);
});
it('formats an agent presence event as "<agent> joined (<role>)"', () => {
const ev: AgentHubEvent = { type: 'agent', action: 'joined', id: 'codex', role: 'implementer' };
expect(formatEvent(ev)).toBe('AgentHub: codex joined (implementer)');
});
it('formats an agent join with no role', () => {
const ev: AgentHubEvent = { type: 'agent', action: 'joined', id: 'kimi' };
expect(formatEvent(ev)).toBe('AgentHub: kimi joined');
});
it('formats a review submission as "Task review <id> by <agent>"', () => {
const ev: AgentHubEvent = { type: 'task', action: 'updated', id: 'TSK-0019', status: 'review', assignedTo: 'codex' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Task review\s+TSK-0019\s+by codex$/);
});
it('formats a reopened task as "Task reopened <id>"', () => {
const ev: AgentHubEvent = { type: 'task', action: 'updated', id: 'TSK-0019', status: 'open' };
expect(formatEvent(ev)).toMatch(/^AgentHub: Task reopened\s+TSK-0019$/);
});
});
// ─── 3. Integration: eventBus fires on REST mutations ────────────────────────
describe('eventBus mutations', () => {
let cwd: string;
let app: ReturnType<typeof buildApp>;
const collected: AgentHubEvent[] = [];
beforeEach(() => {
cwd = mkdtempSync(join(tmpdir(), 'ah-sse-bus-'));
init(cwd, { projectName: 'sse-bus-test', yes: true });
app = buildApp(cwd);
eventBus.on('change', (e: AgentHubEvent) => collected.push(e));
});
afterEach(async () => {
eventBus.removeAllListeners('change');
collected.length = 0;
await app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('emits task/created when POST /tasks succeeds', async () => {
await app.inject({ method: 'POST', url: '/tasks', payload: { title: 'Bus task', role: 'implementer' } });
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'task', action: 'created', id: 'TSK-0001', title: 'Bus task', role: 'implementer' });
expect(collected[0].seq).toBe(1);
});
it('emits task/updated when PATCH /tasks/:id changes status', async () => {
await app.inject({ method: 'POST', url: '/tasks', payload: { title: 'T', role: 'implementer' } });
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'in_progress', assignedTo: 'codex' } });
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'review' } });
collected.length = 0;
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'done' } });
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'task', action: 'updated', id: 'TSK-0001', status: 'done' });
expect(collected[0].seq).toBe(4);
});
it('emits task/updated with assignedTo when a task is claimed', async () => {
await app.inject({ method: 'POST', url: '/tasks', payload: { title: 'T', role: 'implementer' } });
collected.length = 0;
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'in_progress', assignedTo: 'mac-claude' } });
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'task', action: 'updated', status: 'in_progress', assignedTo: 'mac-claude' });
});
it('emits task/updated review when an implementer submits for review', async () => {
await app.inject({ method: 'POST', url: '/tasks', payload: { title: 'T', role: 'implementer' } });
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'in_progress', assignedTo: 'codex' } });
collected.length = 0;
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'review' } });
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'task', action: 'updated', status: 'review' });
});
it('emits task/updated open when the architect reopens after review', async () => {
await app.inject({ method: 'POST', url: '/tasks', payload: { title: 'T', role: 'implementer' } });
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'in_progress', assignedTo: 'codex' } });
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'review' } });
collected.length = 0;
await app.inject({ method: 'PATCH', url: '/tasks/TSK-0001', payload: { status: 'open' } });
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'task', action: 'updated', status: 'open' });
});
it('emits handoff/created when POST /handoffs succeeds', async () => {
await app.inject({
method: 'POST',
url: '/handoffs',
payload: { fromRole: 'architect', toRole: 'implementer', summary: 'Design complete', context: 'See decisions' },
});
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'handoff', action: 'created' });
});
it('emits decision/created when POST /decisions succeeds', async () => {
await app.inject({
method: 'POST',
url: '/decisions',
payload: { title: 'Use SQLite', decision: 'SQLite for local storage', context: 'Low overhead' },
});
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'decision', action: 'created', title: 'Use SQLite' });
});
it('emits memory/created when POST /memory succeeds', async () => {
await app.inject({
method: 'POST',
url: '/memory',
payload: { title: 'DNS cache fact', category: 'technical', content: 'TTL matters' },
});
expect(collected).toHaveLength(1);
expect(collected[0]).toMatchObject({ type: 'memory', action: 'created', title: 'DNS cache fact' });
});
it('does NOT emit when task creation fails (400)', async () => {
// title: '' fails TaskSchema min(1) — createTask throws, route returns 400.
const res = await app.inject({ method: 'POST', url: '/tasks', payload: { title: '' } });
expect(res.statusCode).toBe(400);
// No event should be emitted on failure.
expect(collected).toHaveLength(0);
});
});
// ─── 4. E2E: SSE stream delivers events over a real HTTP connection ───────────
describe('SSE stream e2e', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-sse-e2e-'));
init(cwd, { projectName: 'sse-e2e-test', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('sends an immediate keepalive comment when /events connects', async () => {
const controller = new AbortController();
const res = await fetch(`${server.url}/events`, { signal: controller.signal });
expect(res.status).toBe(200);
expect(res.headers.get('content-type')).toContain('text/event-stream');
expect(res.body).toBeTruthy();
const reader = res.body!.getReader();
const timeout = new Promise<never>((_, reject) => {
setTimeout(() => reject(new Error('SSE: no keepalive frame within 1 s')), 1000);
});
const chunk = await Promise.race([reader.read(), timeout]);
controller.abort();
expect(chunk.done).toBe(false);
expect(new TextDecoder().decode(chunk.value)).toContain(': connected\n\n');
}, 3000);
it('delivers task/created to a connected SSE subscriber', async () => {
const controller = new AbortController();
// Start listening BEFORE posting the task.
const firstEventPromise = new Promise<AgentHubEvent>((resolve, reject) => {
const timeout = setTimeout(
() => reject(new Error('SSE: no event received within 3 s')),
3000,
);
fetch(`${server.url}/events`, { signal: controller.signal })
.then(async (res) => {
if (!res.body) {
clearTimeout(timeout);
reject(new Error('SSE response has no body'));
return;
}
const reader = res.body.getReader();
const dec = new TextDecoder();
let buf = '';
while (true) {
let done: boolean;
let value: Uint8Array | undefined;
try {
({ done, value } = await reader.read());
} catch {
break; // AbortError when controller.abort() is called
}
if (done) break;
if (value) buf += dec.decode(value, { stream: true });
const { events, remaining } = parseSSEBuffer(buf);
buf = remaining;
for (const ev of events) {
clearTimeout(timeout);
resolve(ev);
return;
}
}
})
.catch((err: unknown) => {
// AbortError is expected when we abort after receiving the event.
if (err instanceof Error && err.name === 'AbortError') return;
reject(err);
});
});
// Give the SSE connection a moment to be established before posting.
await new Promise((r) => setTimeout(r, 80));
// Trigger a mutation through the REST API.
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'SSE e2e task', role: 'implementer' }),
});
const event = await firstEventPromise;
controller.abort(); // stop the SSE listener
expect(event.type).toBe('task');
expect(event.action).toBe('created');
expect(event.id).toBe('TSK-0001');
expect(event.title).toBe('SSE e2e task');
expect(event.role).toBe('implementer');
}, 5000);
it('delivers an agent/joined presence event from POST /announce', async () => {
const controller = new AbortController();
const firstEventPromise = new Promise<AgentHubEvent>((resolve, reject) => {
const timeout = setTimeout(() => reject(new Error('SSE: no announce event within 3 s')), 3000);
fetch(`${server.url}/events`, { signal: controller.signal })
.then(async (res) => {
if (!res.body) { clearTimeout(timeout); reject(new Error('no body')); return; }
const reader = res.body.getReader();
const dec = new TextDecoder();
let buf = '';
while (true) {
let done: boolean; let value: Uint8Array | undefined;
try { ({ done, value } = await reader.read()); } catch { break; }
if (done) break;
if (value) buf += dec.decode(value, { stream: true });
const { events, remaining } = parseSSEBuffer(buf);
buf = remaining;
for (const ev of events) { clearTimeout(timeout); resolve(ev); return; }
}
})
.catch((err: unknown) => {
if (err instanceof Error && err.name === 'AbortError') return;
reject(err);
});
});
await new Promise((r) => setTimeout(r, 80));
await fetch(`${server.url}/announce`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ agent: 'codex', role: 'implementer' }),
});
const event = await firstEventPromise;
controller.abort();
expect(event.type).toBe('agent');
expect(event.action).toBe('joined');
expect(event.id).toBe('codex');
expect(event.role).toBe('implementer');
}, 5000);
it('role filter on /events?role= suppresses non-matching tasks', async () => {
const controller = new AbortController();
const received: AgentHubEvent[] = [];
// Subscribe with role=architect — should NOT see the implementer task.
const listenDone = fetch(`${server.url}/events?role=architect`, { signal: controller.signal })
.then(async (res) => {
if (!res.body) return;
const reader = res.body.getReader();
const dec = new TextDecoder();
let buf = '';
while (true) {
let done: boolean;
let value: Uint8Array | undefined;
try {
({ done, value } = await reader.read());
} catch {
break;
}
if (done) break;
if (value) buf += dec.decode(value, { stream: true });
const { events, remaining } = parseSSEBuffer(buf);
buf = remaining;
received.push(...events);
}
})
.catch((err: unknown) => {
if (err instanceof Error && err.name === 'AbortError') return;
throw err;
});
await new Promise((r) => setTimeout(r, 80));
// Post a task for 'implementer' role — should be filtered out.
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'Implementer task', role: 'implementer' }),
});
// Give time for any event to arrive (it shouldn't).
await new Promise((r) => setTimeout(r, 150));
controller.abort();
await listenDone;
expect(received).toHaveLength(0);
}, 5000);
});
describe('SSE durable replay', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-sse-replay-'));
init(cwd, { projectName: 'sse-replay-test', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('persists monotonic ids and replays missed events after Last-Event-ID', async () => {
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'first', role: 'implementer' }),
});
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'second', role: 'implementer' }),
});
expect(listHubEventsAfter(cwd, 0).map((e) => e.seq)).toEqual([1, 2]);
const controller = new AbortController();
const res = await fetch(`${server.url}/events`, {
signal: controller.signal,
headers: { Accept: 'text/event-stream', 'Last-Event-ID': '1' },
});
expect(res.ok).toBe(true);
expect(res.body).toBeTruthy();
const reader = res.body!.getReader();
const decoder = new TextDecoder();
let buffer = '';
const deadline = Date.now() + 1500;
while (Date.now() < deadline) {
const { done, value } = await reader.read();
if (done) break;
if (value) buffer += decoder.decode(value, { stream: true });
const parsed = parseSSEBuffer(buffer);
buffer = parsed.remaining;
if (parsed.events.length) {
await reader.cancel();
controller.abort();
expect(parsed.events).toHaveLength(1);
expect(parsed.events[0]).toMatchObject({ seq: 2, id: 'TSK-0002', title: 'second' });
return;
}
}
await reader.cancel().catch(() => undefined);
controller.abort();
throw new Error('Timed out waiting for replayed event');
}, 5000);
});
// ─── 5. fsWatch: CLI / direct file writes also emit (TSK-0006 part 2) ─────────
// The whole point of the watcher: a `agenthub task create` (no --server) writes
// the entity file directly, bypassing the REST emit path — yet a connected
// watcher must still be triggered. Here we drive the services directly (exactly
// what the CLI does) and assert the eventBus fires.
async function waitFor(
collected: AgentHubEvent[],
pred: (e: AgentHubEvent) => boolean,
ms = 2000,
): Promise<AgentHubEvent | undefined> {
const deadline = Date.now() + ms;
while (Date.now() < deadline) {
const hit = collected.find(pred);
if (hit) return hit;
await new Promise((r) => setTimeout(r, 25));
}
return collected.find(pred);
}
describe('fsWatch emits for non-REST (CLI/file) writes', () => {
let cwd: string;
let stop: () => void;
const collected: AgentHubEvent[] = [];
const onChange = (e: AgentHubEvent) => collected.push(e);
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-fswatch-'));
init(cwd, { projectName: 'fswatch-test', yes: true });
collected.length = 0;
eventBus.on('change', onChange);
stop = startEntityWatcher(cwd);
// fs.watch (FSEvents on macOS) needs a brief moment after watch() before it
// reliably delivers; a write fired in that gap is missed. The server starts
// its watcher long before any write, so this only matters for the test.
await new Promise((r) => setTimeout(r, 250));
});
afterEach(() => {
stop();
eventBus.off('change', onChange);
collected.length = 0;
resetFsWatchErrors();
rmSync(cwd, { recursive: true, force: true });
});
it('emits task/created when a task is written via the service (CLI path)', async () => {
const task = createTask(cwd, { title: 'CLI-created task', role: 'implementer' });
const ev = await waitFor(collected, (e) => e.type === 'task' && e.id === task.id);
expect(ev).toBeDefined();
expect(ev).toMatchObject({
type: 'task',
action: 'created',
id: task.id,
title: 'CLI-created task',
role: 'implementer',
});
}, 4000);
it('emits task/updated when a task file is mutated via the service (claim)', async () => {
const task = createTask(cwd, { title: 'T', role: 'implementer' });
await waitFor(collected, (e) => e.id === task.id); // drain the created event
collected.length = 0;
claimTask(cwd, task.id, 'windows-claude');
const ev = await waitFor(collected, (e) => e.id === task.id && e.action === 'updated');
expect(ev).toBeDefined();
expect(ev).toMatchObject({ type: 'task', action: 'updated', status: 'in_progress', assignedTo: 'windows-claude' });
}, 4000);
it('reindexes every settled direct task-file edit', async () => {
const task = createTask(cwd, { title: 'manual edit', role: 'implementer' });
const file = join(cwd, '.agenthub', 'tasks', `${task.id}.md`);
await waitFor(collected, (e) => e.id === task.id);
for (const status of ['in_progress', 'review']) {
const next = readFileSync(file, 'utf-8')
.replace(/^status: .*$/m, `status: ${status}`)
.replace(/^updatedAt: .*$/m, `updatedAt: ${new Date().toISOString()}`);
writeFileSync(file, next);
const deadline = Date.now() + 2000;
while (Date.now() < deadline && listTasks(cwd).find((t) => t.id === task.id)?.status !== status) {
await new Promise((resolve) => setTimeout(resolve, 25));
}
expect(listTasks(cwd).find((t) => t.id === task.id)?.status).toBe(status);
}
}, 6000);
it('retains the last good index row and exposes invalid frontmatter', async () => {
const task = createTask(cwd, { title: 'invalid edit', role: 'implementer' });
const file = join(cwd, '.agenthub', 'tasks', `${task.id}.md`);
await waitFor(collected, (e) => e.id === task.id);
writeFileSync(file, readFileSync(file, 'utf-8').replace(/^status: .*$/m, 'status: definitely_invalid'));
await new Promise((resolve) => setTimeout(resolve, 500));
expect(listTasks(cwd).find((t) => t.id === task.id)?.status).toBe('open');
expect(getFsWatchErrors()).toEqual([
expect.objectContaining({ filePath: file, error: expect.stringMatching(/status/i) }),
]);
}, 4000);
});
// ─── 6. fsWatch + REST dedup: each change is delivered exactly once ────────────
describe('fsWatch dedup with the REST emit path', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
const collected: AgentHubEvent[] = [];
const onChange = (e: AgentHubEvent) => collected.push(e);
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-fswatch-dedup-'));
init(cwd, { projectName: 'fswatch-dedup', yes: true });
collected.length = 0;
eventBus.on('change', onChange);
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
eventBus.off('change', onChange);
collected.length = 0;
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('REST POST /tasks emits exactly once (watcher echo suppressed)', async () => {
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'dedup task', role: 'implementer' }),
});
// Wait well past the watcher debounce so any duplicate would have landed.
await new Promise((r) => setTimeout(r, 300));
const forTask = collected.filter((e) => e.type === 'task' && e.id === 'TSK-0001');
expect(forTask).toHaveLength(1);
expect(forTask[0].action).toBe('created');
}, 4000);
});
// ─── 7. status auto-refresh: snapshot stays fresh after mutations ─────────────
describe('status auto-refresh on mutation', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-status-refresh-'));
init(cwd, { projectName: 'status-refresh', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('regenerates status/latest.md with the new task after POST /tasks', async () => {
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'Fresh status task', role: 'implementer' }),
});
// Wait past the status-refresh debounce (300 ms) + write.
await new Promise((r) => setTimeout(r, 600));
const status = readFileSync(join(cwd, '.agenthub', 'status', 'latest.md'), 'utf-8');
expect(status).toContain('TSK-0001'); // the just-created task shows as active
}, 4000);
});
// ─── 8. watch --await-review: architect review-queue notifier ─────────────────
describe('watch --await-review', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-await-review-'));
init(cwd, { projectName: 'await-review', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
async function submitForReview(): Promise<void> {
await fetch(`${server.url}/tasks`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ title: 'kimi: t', role: 'implementer' }),
});
await fetch(`${server.url}/tasks/TSK-0001`, {
method: 'PATCH',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ status: 'in_progress', assignedTo: 'kimi' }),
});
}
it('returns immediately when a task is already in review (initial check)', async () => {
await submitForReview();
await fetch(`${server.url}/tasks/TSK-0001`, {
method: 'PATCH',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ status: 'review' }),
});
await expect(watchEvents(server.url, { awaitReview: true })).resolves.toBeUndefined();
}, 4000);
it('exits when a task transitions to review while watching', async () => {
await submitForReview();
const watching = watchEvents(server.url, { awaitReview: true });
await new Promise((r) => setTimeout(r, 200)); // let it connect + pass the initial check
await fetch(`${server.url}/tasks/TSK-0001`, {
method: 'PATCH',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ status: 'review' }),
});
await expect(watching).resolves.toBeUndefined();
}, 5000);
});
// ─── 9. watch --await-message: architect inbox notifier ─────────────────────
describe('watch --await-message', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-await-message-'));
init(cwd, { projectName: 'await-message', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('returns immediately when an unread alias message already exists', async () => {
await fetch(`${server.url}/messages`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ from: 'windows-claude', to: 'architect', text: 'need review' }),
});
await expect(watchEvents(server.url, { awaitMessage: 'claude' })).resolves.toBeUndefined();
}, 4000);
it('exits when a new message arrives for the watched alias', async () => {
const watching = watchEvents(server.url, { awaitMessage: 'architect', newOnly: true });
await new Promise((r) => setTimeout(r, 200));
await fetch(`${server.url}/messages`, {
method: 'POST',
headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ from: 'codex', to: 'claude', text: 'ready' }),
});
await expect(watching).resolves.toBeUndefined();
}, 5000);
});
// ─── 10. watch --await-ask: architect decision notifier ─────────────────────
describe('watch --await-ask', () => {
let cwd: string;
let server: Awaited<ReturnType<typeof startServer>>;
beforeEach(async () => {
cwd = mkdtempSync(join(tmpdir(), 'ah-await-ask-'));
init(cwd, { projectName: 'await-ask', yes: true });
server = await startServer(cwd, { host: '127.0.0.1', port: 0 });
});
afterEach(async () => {
await server.app.close();
rmSync(cwd, { recursive: true, force: true });
});
it('returns immediately when a pending architect Ask already exists', async () => {
await fetch(`${server.url}/asks`, {
method: 'POST', headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ from: 'codex', to: 'claude', question: 'Need decision' }),
});
await expect(watchEvents(server.url, { awaitAsk: true })).resolves.toBeUndefined();
}, 4000);
it('with --new-only exits only when a new Ask for the architect arrives', async () => {
const watching = watchEvents(server.url, { awaitAsk: true, newOnly: true });
await new Promise((r) => setTimeout(r, 200));
await fetch(`${server.url}/asks`, {
method: 'POST', headers: { 'Content-Type': 'application/json' },
body: JSON.stringify({ from: 'kimi', to: 'architect', question: 'Can I proceed?' }),
});
await expect(watching).resolves.toBeUndefined();
}, 5000);
});